Files
LocalAI/core/application/distributed.go
T
localai-org-maint-botandEttore Di Giacinto 9afe10ba21 fix(distributed): survive a slow control-plane database (#11837)
* fix(distributed): evict only when a node is known to be full

scheduleNewModel asked the registry for a free replica slot and treated
every error as "this node is full", so a control-plane database slow
enough to time out the lookup evicted a healthy loaded model. The
evicted process died, a peer frontend still holding its address dialled
the dead port and retried, and the model thrashed between nodes. The
comment on the branch already said it meant a full node; the code never
tested for it.

Evict only on ErrNoFreeSlot. Any other error now returns and names the
lookup that failed, so a slow database degrades into a diagnosable
load failure instead of into lost work.

An audit of the rest of the router found one branch of the same shape:
node selection discarded the error from its last-resort finder, so a
database timeout there also produced a nil node and evicted for it.
That path now returns unless the finder said gorm.ErrRecordNotFound,
which is the only answer that means the cluster had no node to give.
No other destructive branch in router.go fires on a generic error.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* fix(distributed): checkpoint heartbeat writes instead of writing every beat

Every heartbeat UPDATEd backend_nodes. Six nodes at a ten second beat is
roughly 52,000 writes a day against a six-row table, and that churn is
what turned a blocked autovacuum into a 460 MB table whose six-row scan
cost 867 ms and timed out the queries that place models.

A beat carrying only a fresher timestamp now waits for the checkpoint
interval. Each reported field is compared against the value last
persisted rather than tested for presence, because a worker sends its
disk figures on every beat and presence alone would suppress nothing.
A node's first beat, a changed total VRAM, total disk or GPU vendor,
and a free VRAM, RAM or disk reading that has moved more than 256 MiB
from the persisted value all still write at once. A node that is not
active is never suppressed, because it recovers only when the health
monitor sees a fresh timestamp.

The persisted column is up to one interval stale by design, so the
stale-node threshold moves from 60s to 5m to cover it.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* fix(distributed): fail worker readiness when a held backend is unreachable

The readiness gate tracked only the NATS link, so a worker whose backend
processes had died still answered /readyz with 200 and kept receiving
loads. One node did exactly that during an incident: it reported healthy
while its backend port refused connections, and every load routed to it
failed.

Readiness is now the NATS link and, for each backend process the worker
believes it is running, a short dial of its recorded address. A worker
holding no backends stays ready, because idle is a healthy state.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* fix(distributed): keep a starting backend out of the readiness dial set

A backend process is inserted into the supervisor map with its gRPC
address already recorded, but the address refuses connections until the
gRPC server binds, which the startup poll allows up to 30 seconds for and
which takes 10 to 15 seconds on a slow node. The new data-path readiness
probe dialled that address straight away, so a worker answered /readyz
with 503 for the whole of every cold backend start. The container
HEALTHCHECK absorbs that, but a Kubernetes readinessProbe at 10s does
not, and the worker would leave rotation each time it loaded a model.

The skip for a stopping process had no counterpart at the other end of
the lifecycle. Backend processes now carry a serving flag, set where the
startup health-check gate succeeds, and the probe dials only processes
that are serving and not yet stopping. backendStartStillValid becomes
markBackendServing: the check and the mark must share one lock hold, so
the flag can only ever land on the entry the key currently owns.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* feat(distributed): export control-plane database health gauges

Four transactions wedged on a corrupt index held the vacuum horizon open
for 42 days. Nothing measured it, so the first symptom anyone saw was
models failing to load six weeks later, by which time a six-row table
had grown to 460 MB.

Export the oldest xmin age, the longest open transaction, and the dead
tuple ratio on the registry tables. The first is the number that would
have caught it: it sits near zero in health and was 21,002,291.

Sampling is scrape-driven behind a cache, and a failed sample reports
the last good values rather than failing the scrape, because these
gauges matter most when the database is already struggling.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* fix(distributed): rate-limit failed control-plane database samples

The cache advanced its clock only on a successful sample, so once the
database started failing every scrape retried the query immediately.
That turned the cache off in the one regime it exists for: a retry
storm at scrape cadence aimed at a database already in trouble. A
catalog read that consistently exceeds the 5 second timeout also paid
that cost on every scrape, with all scrapes serialised behind the
sampler mutex.

Time every attempt rather than every success, so failures and timeouts
cost the same interval as good samples. Whether a good sample exists
moves to its own field, keeping the gauges absent until the first
success and holding the last good values through later failures.

Also note in the runbook that pg_stat_activity cannot see prepared
transactions or replication slot xmins, so a healthy-looking xmin age
does not by itself rule out a blocked horizon.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* test(distributed): pin that a failing database evicts nothing

Exercises the real distributed stack against a control-plane database that
refuses the router's slot lookup, and asserts the scheduler reports the
lookup it could not answer instead of falling through to eviction.

The failure is injected with privileges rather than a statement timeout. A
timeout set with ALTER DATABASE also breaks AutoMigrate, and it leaks into
every later spec in the suite unless it is reset, so the spec would end up
testing the migration rather than the scheduler. Instead the spec creates a
dedicated login role, points a second gorm handle at it, and revokes that
role's SELECT on node_models.replica_index. This has to be a separate role:
the test container's owner is a PostgreSQL superuser, and superusers bypass
every privilege check, so revoking from CURRENT_USER is recorded and then
ignored.

The revoke is scoped to one column on purpose. Revoking the whole table
would also blind node selection, which runs first and has a guard of its
own, so the scheduler would never reach the slot lookup this spec is about.
Leaving every other column readable lets selection succeed and lands the
refusal exactly on NextFreeReplicaIndex, which plucks replica_index. The
grant is restored from BeforeEach via DeferCleanup, so a failing assertion
or a panic cannot hand the next spec a role that cannot read.

Reverting the eviction guard fails this spec, which is the point of it: the
router then reports "no replica slot on keeper and eviction failed" for an
error that was never evidence the node was full. The surviving-row
assertions are secondary under this injection, because the eviction path
reads whole node_models rows and the same revoke blinds it too; a comment
in the spec says so, so nobody mistakes them for the load-bearing ones.

Also documents why the vector store and the control plane must not share a
database: the removable-tuple cutoff is per database, not per table, so one
transaction left open anywhere stops autovacuum reclaiming the node
registry, and a six-row table bloats into hundreds of megabytes. The note
names LOCALAI_AUTH_DATABASE_URL and LOCALAI_AGENT_POOL_DATABASE_URL as the
two knobs that must differ, and the localai_control_plane_oldest_xmin_age
gauge as the way to see it coming.

grep for StaleNodeThreshold and HealthCheckInterval in
core/config/runtime_settings_registry.go returns no matches: the
distributed duration knobs are not exposed as runtime settings, so the new
heartbeat checkpoint interval follows them and needs no registry entry.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* fix(distributed): close the review gaps in the heartbeat and health path

The stale-node threshold moved from 60 seconds to 5 minutes in this branch
because checkpointing makes last_heartbeat up to one checkpoint interval
behind by design. Two things were left inconsistent with that. NewHealthMonitor
still fell back to a hardcoded 60 seconds when handed a zero threshold, so any
future caller that stopped passing the configured value would mark every
healthy, beating node offline on every cycle. And the threshold itself had a
flag-name constant but no AppOption, no CLI field and no env binding, so an
operator who widened --node-heartbeat-checkpoint had no way to widen the
threshold to match. The fallback now tracks config.DefaultStaleNodeThreshold,
and --stale-node-threshold / LOCALAI_STALE_NODE_THRESHOLD is wired the same
way its sibling is.

Heartbeat suppression compared the RAW reported free VRAM against the
snapshot, but the column persists capAvailable(raw, ceiling). On any node with
a VRAM budget set, whose actual free VRAM oscillates above that ceiling, every
beat looked material while the persisted value never moved: suppression was
defeated on exactly the nodes an operator had configured, and the write
amplification this branch exists to remove came straight back there. The
comparison and the snapshot now both hold the capped figure, so they measure
the same quantity as the column.

Fixing that needs the ceiling, and reading it cost a SELECT on every beat,
including suppressed ones. The skip decision therefore moved ahead of the
updates map and now reuses the ceiling cached on the last durable write, while
the write path still re-reads it before capping anything. A ceiling that
changed inside the checkpoint window can cost one extra or one late write; it
cannot persist a wrong figure. A suppressed beat now costs no query at all.

Also: the operations section now says to grant pg_read_all_stats to the
LocalAI role, because PostgreSQL blanks backend_xmin and xact_start for
sessions owned by other roles, and the transaction that wedged the horizon in
the incident was a co-located vector store connecting as a different role, so
without the grant the new gauge sees only our own sessions. The compose
healthcheck comment now describes readiness covering the backend data path,
and the control-plane gauge registration records the otel.SetMeterProvider
ordering it depends on.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

* fix(distributed): resolve the gauge's table names through gorm

The dead-tuple gauge queried pg_stat_user_tables against a hardcoded list
of three table names. Those three do not agree on where their name comes
from: BackendNode and NodeModel take gorm's default pluralisation, while
GalleryOperationRecord overrides TableName, and gallery_operations
already had a constant of its own that the list duplicated.

A literal list keeps compiling after any of that moves, and the query
then matches nothing. The failure is silent and it points the wrong way:
a dead-tuple ratio that matched no rows reports the same numbers as a
cluster with no bloat, so the gauge would look healthiest exactly when it
had stopped working.

Ask gorm what each model is stored as instead, which follows a TableName
override and the default pluralisation alike. A spec pins that the
override really is consulted: naive pluralisation of the type would give
gallery_operation_records, so the resolution cannot quietly stop asking
the model.

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>

---------

Signed-off-by: Ettore Di Giacinto <mudler@localai.io>
Co-authored-by: Ettore Di Giacinto <mudler@localai.io>
2026-09-02 12:37:12 +02:00

471 lines
19 KiB
Go

package application
import (
"context"
"encoding/json"
"fmt"
"io"
"strings"
"sync"
"time"
"github.com/google/uuid"
"github.com/mudler/LocalAI/core/config"
"github.com/mudler/LocalAI/core/services/agents"
"github.com/mudler/LocalAI/core/services/distributed"
"github.com/mudler/LocalAI/core/services/jobs"
"github.com/mudler/LocalAI/core/services/messaging"
"github.com/mudler/LocalAI/core/services/monitoring"
"github.com/mudler/LocalAI/core/services/nodes"
"github.com/mudler/LocalAI/core/services/nodes/prefixcache"
"github.com/mudler/LocalAI/core/services/storage"
"github.com/mudler/LocalAI/pkg/distributedhdr"
"github.com/mudler/LocalAI/pkg/sanitize"
"github.com/mudler/xlog"
"gorm.io/gorm"
)
// DistributedServices holds all services initialized for distributed mode.
type DistributedServices struct {
Nats *messaging.Client
Store storage.ObjectStore
Registry *nodes.NodeRegistry
Router *nodes.SmartRouter
Health *nodes.HealthMonitor
Reconciler *nodes.ReplicaReconciler
JobStore *jobs.JobStore
Dispatcher *jobs.Dispatcher
AgentStore *agents.AgentStore
AgentBridge *agents.EventBridge
DistStores *distributed.Stores
FileMgr *storage.FileManager
FileStager nodes.FileStager
ModelAdapter *nodes.ModelRouterAdapter
Unloader *nodes.RemoteUnloaderAdapter
ModelCleanup *nodes.ModelCleanupService
shutdownOnce sync.Once
}
// Shutdown stops all distributed services in reverse initialization order.
// It is safe to call on a nil receiver and is idempotent (uses sync.Once).
func (ds *DistributedServices) Shutdown() {
if ds == nil {
return
}
ds.shutdownOnce.Do(func() {
if ds.Health != nil {
ds.Health.Stop()
}
if ds.Dispatcher != nil {
ds.Dispatcher.Stop()
}
if closer, ok := ds.Store.(io.Closer); ok {
closer.Close()
}
// AgentBridge has no Close method — its NATS subscriptions are cleaned up
// when the NATS client is closed below.
if ds.Nats != nil {
ds.Nats.Close()
}
xlog.Info("Distributed services shut down")
})
}
// initDistributed validates distributed mode prerequisites and initializes
// NATS, object storage, node registry, and instance identity.
// Returns nil if distributed mode is not enabled.
// configLoader is used by the SmartRouter to compute concurrency-group
// anti-affinity at placement time (#9659); it may be nil in tests.
func initDistributed(cfg *config.ApplicationConfig, authDB *gorm.DB, configLoader *config.ModelConfigLoader) (*DistributedServices, error) {
if !cfg.Distributed.Enabled {
return nil, nil
}
xlog.Info("Distributed mode enabled — validating prerequisites")
// Validate distributed config (NATS URL, S3 credential pairing, durations, etc.)
if err := cfg.Distributed.Validate(); err != nil {
return nil, err
}
// Validate PostgreSQL is configured (auth DB must be PostgreSQL for distributed mode)
if !cfg.Auth.Enabled {
return nil, fmt.Errorf("distributed mode requires authentication to be enabled (--auth / LOCALAI_AUTH=true)")
}
if !isPostgresURL(cfg.Auth.DatabaseURL) {
return nil, fmt.Errorf("distributed mode requires PostgreSQL for auth database (got %q)", sanitize.URL(cfg.Auth.DatabaseURL))
}
// Generate instance ID if not set
if cfg.Distributed.InstanceID == "" {
cfg.Distributed.InstanceID = uuid.New().String()
}
xlog.Info("Distributed instance", "id", cfg.Distributed.InstanceID)
// Connect to NATS
natsAuth := cfg.Distributed.NatsAuthConfig()
if natsAuth.RequireAuth && (natsAuth.ServiceUserJWT == "" || natsAuth.ServiceUserSeed == "") {
return nil, fmt.Errorf("LOCALAI_NATS_REQUIRE_AUTH requires LOCALAI_NATS_SERVICE_JWT and LOCALAI_NATS_SERVICE_SEED")
}
natsOpts := cfg.Distributed.NatsMessagingOptions("", "")
natsClient, err := messaging.New(cfg.Distributed.NatsURL, natsOpts...)
if err != nil {
return nil, fmt.Errorf("connecting to NATS: %w", err)
}
xlog.Info("Connected to NATS", "url", sanitize.URL(cfg.Distributed.NatsURL))
// Ensure NATS is closed if any subsequent initialization step fails.
success := false
defer func() {
if !success {
natsClient.Close()
}
}()
// Initialize object storage
var store storage.ObjectStore
if cfg.Distributed.StorageURL != "" {
if cfg.Distributed.StorageBucket == "" {
return nil, fmt.Errorf("distributed storage bucket must be set when storage URL is configured")
}
s3Store, err := storage.NewS3Store(context.Background(), storage.S3Config{
Endpoint: cfg.Distributed.StorageURL,
Region: cfg.Distributed.StorageRegion,
Bucket: cfg.Distributed.StorageBucket,
AccessKeyID: cfg.Distributed.StorageAccessKey,
SecretAccessKey: cfg.Distributed.StorageSecretKey,
ForcePathStyle: true, // required for MinIO
})
if err != nil {
return nil, fmt.Errorf("initializing S3 storage: %w", err)
}
xlog.Info("Object storage initialized (S3)", "endpoint", cfg.Distributed.StorageURL, "bucket", cfg.Distributed.StorageBucket)
store = s3Store
} else {
// Fallback to filesystem storage in distributed mode (useful for single-node testing)
fsStore, err := storage.NewFilesystemStore(cfg.DataPath + "/objectstore")
if err != nil {
return nil, fmt.Errorf("initializing filesystem storage: %w", err)
}
xlog.Info("Object storage initialized (filesystem fallback)", "path", cfg.DataPath+"/objectstore")
store = fsStore
}
// Initialize node registry (requires the auth DB which is PostgreSQL)
if authDB == nil {
return nil, fmt.Errorf("distributed mode requires auth database to be initialized first")
}
registry, err := nodes.NewNodeRegistry(authDB)
if err != nil {
return nil, fmt.Errorf("initializing node registry: %w", err)
}
xlog.Info("Node registry initialized")
// Bound durable heartbeat writes: a beat that only carries a fresher
// timestamp is what turned backend_nodes into a 460 MB six-row table.
registry.SetHeartbeatCheckpoint(cfg.Distributed.NodeHeartbeatCheckpointOrDefault())
// Measure the vacuum horizon. The 42 days it stayed open went unnoticed
// because no gauge reported it until models started failing to load.
if err := monitoring.RegisterControlPlaneDBMetrics(authDB, 30*time.Second); err != nil {
// Metrics are diagnostic; a failure here must not stop the frontend.
xlog.Warn("Control-plane database metrics unavailable", "error", err)
}
// Let scheduling rules be keyed by a model alias. The registry resolves a
// rule's name through the config loader to find the model it governs, so an
// operator can pin placement to a stable name like "production" and have it
// follow the alias when the alias is repointed. Wired before the seed below
// and before the reconciler starts, so the first tick already resolves.
if configLoader != nil {
registry.SetAliasResolver(configLoader)
}
// Seed declarative per-model scheduling config (LOCALAI_MODEL_SCHEDULING /
// LOCALAI_MODEL_SCHEDULING_CONFIG). Authoritative: overwrites matching models
// on every boot. Runs before the reconciler starts so the first tick already
// sees the desired state. Models not listed are left untouched.
if cfg.Distributed.ModelSchedulingJSON != "" || cfg.Distributed.ModelSchedulingConfigPath != "" {
schedConfigs, err := nodes.ParseSchedulingSeed(cfg.Distributed.ModelSchedulingJSON, cfg.Distributed.ModelSchedulingConfigPath)
if err != nil {
return nil, fmt.Errorf("parsing declarative model scheduling config: %w", err)
}
if err := registry.SeedModelScheduling(context.Background(), schedConfigs); err != nil {
return nil, fmt.Errorf("seeding declarative model scheduling config: %w", err)
}
xlog.Info("Applied declarative model scheduling config", "models", len(schedConfigs))
}
// Collect SmartRouter option values; the router itself is created after all
// dependencies (including FileStager and Unloader) are ready.
var routerAuthToken string
if cfg.Distributed.RegistrationToken != "" {
routerAuthToken = cfg.Distributed.RegistrationToken
}
var routerGalleriesJSON string
if galleriesJSON, err := json.Marshal(cfg.BackendGalleries); err == nil {
routerGalleriesJSON = string(galleriesJSON)
}
healthMon := nodes.NewHealthMonitor(registry, authDB,
cfg.Distributed.HealthCheckIntervalOrDefault(),
cfg.Distributed.StaleNodeThresholdOrDefault(),
routerAuthToken,
!cfg.Distributed.DisablePerModelHealthCheck,
)
// Initialize job store
jobStore, err := jobs.NewJobStore(authDB)
if err != nil {
return nil, fmt.Errorf("initializing job store: %w", err)
}
xlog.Info("Distributed job store initialized")
// Initialize job dispatcher
dispatcher := jobs.NewDispatcher(jobStore, natsClient, authDB, cfg.Distributed.InstanceID, cfg.Distributed.JobWorkerConcurrency)
// Initialize agent store
agentStore, err := agents.NewAgentStore(authDB)
if err != nil {
return nil, fmt.Errorf("initializing agent store: %w", err)
}
xlog.Info("Distributed agent store initialized")
// Initialize agent event bridge
agentBridge := agents.NewEventBridge(natsClient, agentStore, cfg.Distributed.InstanceID)
// Start observable persister — captures observable_update events from workers
// (which have no DB access) and persists them to PostgreSQL.
if err := agentBridge.StartObservablePersister(); err != nil {
xlog.Warn("Failed to start observable persister", "error", err)
} else {
xlog.Info("Observable persister started")
}
// Initialize Phase 4 stores (MCP, Gallery, FineTune, Skills)
distStores, err := distributed.InitStores(authDB)
if err != nil {
return nil, fmt.Errorf("initializing distributed stores: %w", err)
}
// Initialize file manager with local cache
cacheDir := cfg.DataPath + "/cache"
fileMgr, err := storage.NewFileManager(store, cacheDir)
if err != nil {
return nil, fmt.Errorf("initializing file manager: %w", err)
}
xlog.Info("File manager initialized", "cacheDir", cacheDir)
// Create FileStager for distributed file transfer
var fileStager nodes.FileStager
if cfg.Distributed.StorageURL != "" {
fileStager = nodes.NewS3NATSFileStager(fileMgr, natsClient)
xlog.Info("File stager initialized (S3+NATS)")
} else {
fileStager = nodes.NewHTTPFileStager(func(nodeID string) (string, error) {
node, err := registry.Get(context.Background(), nodeID)
if err != nil {
return "", err
}
if node.HTTPAddress == "" {
return "", fmt.Errorf("node %s has no HTTP address for file transfer", nodeID)
}
return node.HTTPAddress, nil
}, cfg.Distributed.RegistrationToken)
xlog.Info("File stager initialized (HTTP direct transfer)")
}
// Create RemoteUnloaderAdapter — needed by SmartRouter and startup.go
remoteUnloader := nodes.NewRemoteUnloaderAdapter(
registry,
natsClient,
cfg.Distributed.BackendInstallTimeoutOrDefault(),
cfg.Distributed.BackendUpgradeTimeoutOrDefault(),
)
// Prefix-cache-aware routing. Enabled by default; an operator can opt out
// with --distributed-prefix-cache=false, which leaves prefixProvider and
// pressure nil so the SmartRouter and reconciler behave exactly as the
// round-robin floor (true no-op). When enabled we build the local index,
// wrap it in a NATS-backed Sync (publishes our observations, applies peers'
// via the subscriptions below), install the extraction hook used by
// core/backend/llm.go, and run a background eviction ticker on the app ctx.
var prefixProvider prefixcache.Provider
var pressure *prefixcache.Pressure
var prefixCfg prefixcache.Config
if !cfg.Distributed.PrefixCacheDisabled {
prefixCfg = prefixcache.DefaultConfig()
if cfg.Distributed.PrefixCacheTTL > 0 {
prefixCfg.TTL = cfg.Distributed.PrefixCacheTTL
}
if err := prefixCfg.Validate(); err != nil {
return nil, fmt.Errorf("invalid prefix-cache configuration: %w", err)
}
idx := prefixcache.NewIndex(prefixCfg)
prefixSync := prefixcache.NewSync(idx, natsClient)
pressure = prefixcache.NewPressure(prefixCfg.PressureWindow)
prefixProvider = prefixSync
// Invalidate the prefix-cache index whenever a replica row is removed.
// AddReplicaRemovedHook fires from the single chokepoint all removal paths
// funnel through (RemoveNodeModel / RemoveAllNodeModelReplicas), so this
// one hook covers every path: reconciler scale-down, probe reaper,
// health-monitor reap, RemoteUnloaderAdapter, and the router. Registering
// it only inside this enabled block keeps the disabled path a true no-op
// for the prefix cache; other subsystems register their own hooks
// independently and are unaffected either way.
registry.AddReplicaRemovedHook(func(model, node string, replica int) {
if replica < 0 {
prefixSync.InvalidateNode(model, node)
} else {
prefixSync.Invalidate(model, prefixcache.ReplicaKey{NodeID: node, Replica: replica})
}
})
distributedhdr.PrefixChainHook = func(model, prompt string) []uint64 {
return prefixcache.ExtractChain(model, prompt, prefixCfg)
}
// Apply peers' observations/invalidations to the same Sync. ApplyObserve
// and ApplyInvalidate update only the local index and do not re-publish,
// so there is no broadcast loop.
if _, err := messaging.SubscribeJSON(natsClient, messaging.SubjectPrefixCacheObserve, func(ev messaging.PrefixCacheObserveEvent) {
prefixSync.ApplyObserve(ev, time.Now())
}); err != nil {
return nil, fmt.Errorf("subscribing to %s: %w", messaging.SubjectPrefixCacheObserve, err)
}
if _, err := messaging.SubscribeJSON(natsClient, messaging.SubjectPrefixCacheInvalidate, func(ev messaging.PrefixCacheInvalidateEvent) {
prefixSync.ApplyInvalidate(ev)
}); err != nil {
return nil, fmt.Errorf("subscribing to %s: %w", messaging.SubjectPrefixCacheInvalidate, err)
}
// Background eviction: sweep idle entries on the app context. Stopped
// when the app context is cancelled (mirrors the reconciler loop which
// also runs on options.Context). TTL/2 keeps stale entries from
// outliving their idle window by more than half a TTL.
evictInterval := prefixCfg.TTL / 2
go func() {
ticker := time.NewTicker(evictInterval)
defer ticker.Stop()
for {
select {
case <-cfg.Context.Done():
return
case <-ticker.C:
prefixSync.Evict(time.Now())
}
}
}()
xlog.Info("Prefix-cache-aware routing enabled", "ttl", prefixCfg.TTL, "evictInterval", evictInterval)
} else {
xlog.Info("Prefix-cache-aware routing disabled: using round-robin routing")
}
// All dependencies ready — build SmartRouter with all options at once
var conflictResolver nodes.ConcurrencyConflictResolver
if configLoader != nil {
conflictResolver = configLoader
}
modelCleanup := nodes.NewModelCleanupService(registry, remoteUnloader)
router := nodes.NewSmartRouter(registry, nodes.SmartRouterOptions{
Unloader: remoteUnloader,
ModelCleanup: modelCleanup,
FileStager: fileStager,
GalleriesJSON: routerGalleriesJSON,
AuthToken: routerAuthToken,
DB: authDB,
ConflictResolver: conflictResolver,
PrefixProvider: prefixProvider,
PrefixConfig: prefixCfg,
Pressure: pressure,
SharedModels: cfg.Distributed.SharedModels,
// A closure over the live ApplicationConfig, NOT a snapshot: the
// runtime setting (distributed_disk_headroom_check) mutates this exact
// member, so a snapshot here would make the toggle a no-op until
// restart. env/CLI sets the boot value, POST /api/settings overrides it
// live, and this is the single member both write.
DiskHeadroomEnabled: func() bool { return !cfg.Distributed.DiskHeadroomDisabled },
// RAW, not OrDefault: zero means "derive the budget per model from the
// checkpoint size" (config.ModelLoadTimeoutForSize), which is what makes
// a 70 GB video checkpoint work without the operator first hitting a
// DeadlineExceeded and going looking for a knob. A non-zero value here is
// an explicit override and is used verbatim.
ModelLoadTimeout: cfg.Distributed.ModelLoadTimeout,
// Cap how long a cold load may hold the per-model advisory lock. Derived
// from BOTH configured budgets it has to cover, so raising either the
// install timeout (slow links pulling multi-GB images) or the model load
// timeout (very large checkpoints) widens the ceiling too, instead of
// letting a stale bound cut a legitimately slow load short.
ModelLoadCeiling: nodes.ModelLoadCeilingFor(
cfg.Distributed.BackendInstallTimeoutOrDefault(),
cfg.Distributed.ModelLoadTimeoutOrDefault(),
),
// Bounds the REQUEST, not the load: a caller out of budget gets 503 with
// live staging progress while the job keeps running underneath.
ModelLoadWait: cfg.Distributed.ModelLoadWait,
})
// Wire staging-progress broadcasting so file-staging shows up on every
// replica, not just the one performing the transfer. Without this, a
// /api/operations poll that round-robins onto a peer sees no staging row and
// the progress flickers. The origin publishes; peers mirror via the wildcard.
// A silently disabled safety check is how the original incident stayed
// invisible for sixteen minutes. Say so once, loudly, at startup.
if cfg.Distributed.DiskHeadroomDisabled {
xlog.Info("Disk-headroom admission check is DISABLED: node selection will ignore whether a worker can store the model, and staging may fail with ENOSPC partway through a transfer",
"knob", config.FlagDiskHeadroomCheck, "env", "LOCALAI_DISTRIBUTED_DISK_HEADROOM_CHECK")
}
router.StagingTracker().SetPublisher(natsClient)
if _, err := router.StagingTracker().SubscribeBroadcasts(natsClient); err != nil {
xlog.Warn("Failed to subscribe to staging progress broadcasts", "error", err)
}
// Create ReplicaReconciler for auto-scaling model replicas. Adapter +
// RegistrationToken feed the state-reconciliation passes: pending op
// drain uses the adapter, and model health probes use the token to auth
// against workers' gRPC HealthCheck.
reconciler := nodes.NewReplicaReconciler(nodes.ReplicaReconcilerOptions{
Registry: registry,
Scheduler: router,
Unloader: remoteUnloader,
Adapter: remoteUnloader,
RegistrationToken: cfg.Distributed.RegistrationToken,
DB: authDB,
Interval: 30 * time.Second,
ScaleDownDelay: 5 * time.Minute,
ProbeStaleAfter: 2 * time.Minute,
Pressure: pressure,
PressureThreshold: prefixCfg.PressureScaleThreshold,
})
// Create ModelRouterAdapter to wire into ModelLoader
modelAdapter := nodes.NewModelRouterAdapter(router)
success = true
return &DistributedServices{
Nats: natsClient,
Store: store,
Registry: registry,
Router: router,
Health: healthMon,
Reconciler: reconciler,
JobStore: jobStore,
Dispatcher: dispatcher,
AgentStore: agentStore,
AgentBridge: agentBridge,
DistStores: distStores,
FileMgr: fileMgr,
FileStager: fileStager,
ModelAdapter: modelAdapter,
Unloader: remoteUnloader,
ModelCleanup: modelCleanup,
}, nil
}
func isPostgresURL(url string) bool {
return strings.HasPrefix(url, "postgres://") || strings.HasPrefix(url, "postgresql://")
}